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Sensing the neighboring robot by the artificial lateral line of a bio-inspired robotic fish

机译:通过生物启发的机器鱼的人工侧向线感应附近的机器人

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Fish possesses a unique sensory organ called the lateral line. The lateral line provides fish with flow-related information. It is accepted that fish can use the lateral line to sense states of its neighbours in schooling behaviors. In this study, we investigate how a focal robotic fish senses the states of its swimming neighbour by using its onboard artificial lateral line system for the first time. Dye flow visualization is used to characterize the large-scale structures of the wake behind a swimming robotic fish. In the experiment, the Reverse Karman Vortex Street generated by the anterior robotic fish was sensed by the artificial lateral line of the focal robot. The results show that the robot's artificial lateral line can detect the beating frequency of its neighbouring robot and the distance between the robots. It is promising that artificial lateral line sensing could become one of the most popular close interaction methods for a group of underwater robots in the near future.
机译:鱼拥有称为侧线的独特感觉器官。侧线为鱼类提供了与流量有关的信息。人们普遍认为鱼可以利用侧线来感知其在学习行为中的邻居状态。在这项研究中,我们首次研究了焦点机器人鱼如何通过使用其机载人工侧向线系统来感测其游泳邻居的状态。染料流可视化用于表征游泳机器人鱼后的大型尾流结构。在实验中,前部机器人鱼产生的反向卡曼涡街是由焦点机器人的人工侧向线感测的。结果表明,该机器人的人工横线可以检测其相邻机器人的跳动频率以及机器人之间的距离。希望在不久的将来,人工横向线感测将成为一组水下机器人最流行的紧密交互方法之一。

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